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Evaluation of pore structures in volcanic reservoirs: a case study of the Lower Cretaceous Yingcheng Formation in the Southern Songliao Basin, NE China

机译:火山岩储层孔隙结构评价-以中国松辽盆地南部下白垩统营城组为例

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摘要

Different pore types and variable pore structures can determine reservoir potentials of volcanic rocks. Therefore, it is of great importance to understand the pore structures of volcanic reservoirs. With the Lower Cretaceous Yingcheng volcanic rocks, this study attempts to investigate and evaluate the micro pore structures of a volcanic reservoir through: (1) measuring porosity and permeability of core samples; (2) identifying pore types within thin sections; (3) characterizing pore structures with pressure-controlled mercury injection. The Lower Cretaceous Yingcheng volcanic rocks exhibits low porosities (on average 7.39%) and very low permeability (on average 0.283x10(-6)m(2)). Three major pore types were identified from the Lower Cretaceous Yingcheng volcanic reservoir, including primary pores, secondary pores and fractures. Additionally, the pore structures of the Lower Cretaceous Yingcheng volcanic reservoir can be classified into three types. Type I pore structure primarily occurs in the volcanic breccia, crystal tuff and tuffites. The corresponding pore system is dominated by primary intergranular pores, intragranular dissolved pores and devitrified micropores with porosity and permeability higher than 5.4% and 0.05x10(-6)mu m(2), respectively. Corresponding mercury intrusion curves are characterized by low displacement pressure, high maximum mercury saturation and mercury withdrawal efficiency. Type II pore structure is commonly observed in the tuff and tuffites, while primary intergranular pores and secondary micropores dominate pore system with porosity of 2.5-5.4% and permeability of 0.012-0.05x10(-6)m(2). The mercury intrusion curves are similar to the type I. Type III pore structure is also pervasively developed in the crystal tuff and tuffites. Intragranular dissolved micropores are most important ones with porosity and permeability less than 2.5% and 0.01x10(-6)m(2), respectively. Different from type I and II pore structure, the mercury intrusion curves of the type III have high-displacement pressure, low maximum mercury saturation and mercury withdrawal efficiency, indicating poor reservoir quality.
机译:不同的孔隙类型和可变的孔隙结构可以确定火山岩的储层潜力。因此,了解火山岩储层的孔隙结构具有重要意义。对于下白垩统营城火山岩,本研究试图通过以下方法研究和评价火山岩储层的微孔结构:(1)测量岩心样品的孔隙度和渗透率; (2)识别薄片内的孔类型; (3)通过压力控制汞注入来表征孔结构。下白垩统营城火山岩的孔隙度低(平均7.39%),渗透率极低(平均0.283x10(-6)m(2))。从下白垩统营城火山岩储层中识别出三种主要的孔隙类型,包括初级孔隙,次级孔隙和裂缝。另外,下白垩统营城火山岩储层的孔隙结构可分为三种类型。 I型孔隙结构主要出现在火山角砾岩,晶体凝灰岩和凝灰岩中。相应的孔隙系统以主要的粒间孔隙,颗粒内溶解的孔隙和失透的微孔为主,孔隙率和渗透率分别高于5.4%和0.05x10(-6)μm(2)。相应的汞侵入曲线的特征在于低的置换压力,高的最大汞饱和度和汞的吸收效率。 II型孔结构通常在凝灰岩和凝灰岩中观察到,而主要的粒间孔和次要的微孔则占主导地位,孔隙度为2.5-5.4%,渗透率为0.012-0.05x10(-6)m(2)。汞的侵入曲线与I型相似。在凝灰岩和凝灰岩中也普遍形成了III型孔结构。颗粒内溶解的微孔是最重要的,其孔隙率和渗透率分别小于2.5%和0.01x10(-6)m(2)。与Ⅰ型和Ⅱ型孔隙结构不同,Ⅲ型的汞侵入曲线具有较高的驱替压力,较低的最大汞饱和度和较低的除汞效率,表明储层质量较差。

著录项

  • 来源
    《Environmental earth sciences》 |2019年第4期|102.1-102.14|共14页
  • 作者单位

    Yangtze Univ, Coll Geosci, Wuhan 430100, Hubei, Peoples R China|PetroChina, Res Inst Petr Explorat & Dev, Jilin Oilfield, Songyuan 138000, Peoples R China;

    Yangtze Univ, Coll Geosci, Wuhan 430100, Hubei, Peoples R China;

    PetroChina, Res Inst Petr Explorat & Dev, Jilin Oilfield, Songyuan 138000, Peoples R China;

    PetroChina, Res Inst Petr Explorat & Dev, Jilin Oilfield, Songyuan 138000, Peoples R China;

    PetroChina, Res Inst Petr Explorat & Dev, Jilin Oilfield, Songyuan 138000, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pore structure; Volcanic reservoir; Yingcheng Formation; Southern Songliao Basin;

    机译:孔隙结构火山岩营城组松辽盆地南部;
  • 入库时间 2022-08-18 04:13:00

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